EP1879277B1 - Wind farm and method for operating a wind farm - Google Patents
Wind farm and method for operating a wind farm Download PDFInfo
- Publication number
- EP1879277B1 EP1879277B1 EP20070012880 EP07012880A EP1879277B1 EP 1879277 B1 EP1879277 B1 EP 1879277B1 EP 20070012880 EP20070012880 EP 20070012880 EP 07012880 A EP07012880 A EP 07012880A EP 1879277 B1 EP1879277 B1 EP 1879277B1
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- active power
- group
- wind energy
- wind
- park
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- 238000000034 method Methods 0.000 title claims abstract description 29
- 238000010168 coupling process Methods 0.000 claims description 5
- 238000005859 coupling reaction Methods 0.000 claims description 5
- 230000008878 coupling Effects 0.000 claims 2
- 238000013459 approach Methods 0.000 description 3
- 230000001276 controlling effect Effects 0.000 description 3
- 238000013461 design Methods 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 230000002457 bidirectional effect Effects 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 238000012544 monitoring process Methods 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
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Classifications
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J3/00—Circuit arrangements for ac mains or ac distribution networks
- H02J3/38—Arrangements for parallely feeding a single network by two or more generators, converters or transformers
- H02J3/46—Controlling of the sharing of output between the generators, converters, or transformers
- H02J3/48—Controlling the sharing of the in-phase component
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03D—WIND MOTORS
- F03D7/00—Controlling wind motors
- F03D7/02—Controlling wind motors the wind motors having rotation axis substantially parallel to the air flow entering the rotor
- F03D7/028—Controlling wind motors the wind motors having rotation axis substantially parallel to the air flow entering the rotor controlling wind motor output power
- F03D7/0284—Controlling wind motors the wind motors having rotation axis substantially parallel to the air flow entering the rotor controlling wind motor output power in relation to the state of the electric grid
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03D—WIND MOTORS
- F03D7/00—Controlling wind motors
- F03D7/02—Controlling wind motors the wind motors having rotation axis substantially parallel to the air flow entering the rotor
- F03D7/04—Automatic control; Regulation
- F03D7/042—Automatic control; Regulation by means of an electrical or electronic controller
- F03D7/048—Automatic control; Regulation by means of an electrical or electronic controller controlling wind farms
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J3/00—Circuit arrangements for ac mains or ac distribution networks
- H02J3/38—Arrangements for parallely feeding a single network by two or more generators, converters or transformers
- H02J3/381—Dispersed generators
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J3/00—Circuit arrangements for ac mains or ac distribution networks
- H02J3/38—Arrangements for parallely feeding a single network by two or more generators, converters or transformers
- H02J3/46—Controlling of the sharing of output between the generators, converters, or transformers
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05B—INDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
- F05B2240/00—Components
- F05B2240/90—Mounting on supporting structures or systems
- F05B2240/96—Mounting on supporting structures or systems as part of a wind turbine farm
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J2300/00—Systems for supplying or distributing electric power characterised by decentralized, dispersed, or local generation
- H02J2300/20—The dispersed energy generation being of renewable origin
- H02J2300/28—The renewable source being wind energy
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/70—Wind energy
- Y02E10/72—Wind turbines with rotation axis in wind direction
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/70—Wind energy
- Y02E10/76—Power conversion electric or electronic aspects
Definitions
- the present invention relates to a wind farm and a method for operating a wind farm.
- the wind farm has a plurality of wind turbines, each having a plant control.
- the system control is able to specify the effective power to be generated by the wind turbine if there is enough wind.
- the plant control of the wind turbine is given a setpoint.
- the system control can also be designed as a control, so that the actual value of the active power generated by the wind turbine can be adjusted to the desired value.
- the wind farm is equipped with a parking control, which sets the plant control a setpoint for the active power.
- WO 01/25630 A1 a wind farm is known whose rated power is greater than the power that can be fed into the power grid to which the wind farm is connected, and / or fed. In order to limit the fed-in power to the maximum value, it is proposed to limit the fed-in power of all wind energy installations of the wind farm.
- WO 03/030329 A1 is known a wind farm, whose delivered into the power grid active power can be specified by a network operator.
- the control of the wind farm throttles according to the specifications of the performance for the wind turbines, their performance can be throttled the same or different.
- a wind farm which has a park control.
- the active power fed into the grid by the wind farm is set as a function of the frequency measured at the grid connection point.
- This control / regulation for the wind farm is based on the fact that if more power is generated than consumed in a network, the frequency increases, and if more power is consumed than generated, then the frequency drops.
- Out EP 1 571 746 A1 is a method for controlling the active power in a wind farm known.
- the method provides that a target value for the active power of the parking control can be specified manually or dynamically.
- two methods are provided to reduce the excess power of the wind farm. In the first approach, for selected wind turbines, the power is ramped up to a maximum and the other remaining plants shut down. In an alternative approach, one or more wind turbines are shut down and the fine tuning of the power is performed by the remaining plants.
- Scada monitoring control and data acquisition
- the Scada system is designed to collect data from each wind turbine and control the wind turbine via an interface and communicate with other parts of the system.
- a so-called field processing unit (APU) is designed to control the wind turbine with regard to limit values and their safety for a user via an interface. This also includes a limitation of the power output set one or performance limits by which a suitable number of wind turbines will shut down.
- the power fed into the grid by a wind farm is to be limited within a short period of time and kept stable at the limited value.
- the signal that triggers this process in the wind farm set by the network operator. For example, the period of time within which the real power must be shut down is less than 4 seconds.
- the invention has for its object to provide a wind farm and a method for its operation, which allows simple means to limit within a short period of time the fed into the electrical network active power, without limiting the possibilities for controlling the wind farm.
- the object is achieved by a wind farm with the features of claim 1 and a method for operating a wind farm with the features of claim 10.
- the wind farm according to the invention has a plurality of wind turbines, each having a plant control.
- the system controller specifies the value of active power to be generated for the associated wind turbine.
- the park control specifies a setpoint for the total active power to be fed into the grid.
- the parking control limits the active power fed into the electrical supply network by the wind farm to a predetermined value. Both the size of the predetermined value and the time duration can either be determined by the park control itself or the parking control can be specified by the power supply company. It is also possible that the time duration for the predetermined value is not determined in advance but results from later signals to the parking control.
- the park control unit divides the wind power plants of the wind farm into a first and a second group.
- the wind turbines of the first group are switched off.
- the wind turbines of the second group is in each case given a desired value for their active power.
- a shutdown of the wind turbines such as an emergency shutdown or emergency stop, works much faster than adjusting the wind turbines to a lower setpoint.
- the parking control again the wind turbines of the first group starts as soon as the sum of the actual values of the active power of the wind turbines of the second group has reached the predetermined setpoint.
- the park control initiates the re-startup and / or the re-engagement of the wind turbines when a steady state value for the actual value has been reached, which corresponds approximately to the desired value.
- the re-start and / or re-coupling can be initiated after a predetermined period of time. This process step causes after a rapid reduction of the active power by switching off the wind turbines of the first group, these are restarted and connected to the grid.
- the early re-startup and / or connection of the wind turbines of the first group ensures that the performance of the entire wind farm can be regulated quickly, even after a power limitation again in full, ie with all wind turbines.
- the setpoint value of the active power of each individual wind turbine is reduced, which increases the distance to the maximum possible active power influenced by the wind speed. This guarantees a longer constant active power production even with decreasing wind speed, which on the one hand increases the yield and on the other hand contributes to grid stability through constant active power production.
- the parking control is designed such that the second group, so the group of wind turbines, which is further operated, is selected such that the actual value of the total input of the second group active power less than or equal to the predetermined value for the Active power is.
- the selection of the second group ensures that the predetermined power value to be reduced to is not or only slightly exceeded becomes.
- the park controller ensures that the number of wind turbines in the first group is as small as possible. It is thus ensured in the inventive method that only as many systems are shut down as necessary. This ensures that the actual value of the injected power is not unnecessarily small after switching off individual wind turbines, but deviates only slightly from the predetermined value for the fed power, if possible.
- the parking controller selects the wind energy plants of the second group such that the sum of the actual values of the active power of these wind turbines corresponds approximately to the predetermined value of the power. This ensures that in the wind turbines of the second group only a small control intervention must be made. In this way it can also be ensured that in unfavorable network conditions, the wind turbines will continue to operate and so at least for the given period of time, the active power can be fed to support the network.
- the plant controls of the individual wind turbines are connected via a bidirectional data line with the park control.
- data about the state of the wind energy plant can be forwarded to the parking control via the data line.
- These data which relate, for example, to the current actual value of the active power generated, but also to other aspects, can be taken into account by the parking control during the division into the first and / or second group.
- the parking controller receives commands to the setpoint of the active power to be fed. This means that the network operator has the opportunity has, via a central controller of the network operator to specify the active power to be fed in and the duration of the wind farm.
- the parking control is designed as a control, which is provided with a measuring device.
- the measuring device measures the active power fed into the network, so that the parking control can regulate the actual value accordingly.
- the wind turbines of the second group can be selected so that they are already close to the predetermined value for the power.
- the object according to the invention is likewise achieved by a method for controlling a wind farm.
- the wind farm has a large number of wind turbines whose turbine controls each specify a nominal value for the active power of the wind turbines.
- the park control according to the invention limits the active power fed into the grid by the wind farm to a predetermined value for a predetermined period of time.
- the parking control switches off a first group of wind turbines and in each case pre-sets a corresponding setpoint value for the active power of a second group of wind turbines.
- the method according to the invention therefore very quickly makes it possible to limit the power fed in by the wind farm, since switching off the wind power plant, for example by a quick stop, takes significantly less time than shutting down the active power.
- the parking controller restarts the wind turbines of the first group as soon as the sum of the actual values of the active power of the wind turbines of the second group has reached the predetermined desired value.
- the park control directs the re-start and / or the re-coupling of the wind turbines when a steady value for the actual value has been reached, which corresponds approximately to the desired value. This process step causes after a rapid reduction of the active power by switching off the wind turbines of the first group, these are restarted and connected to the grid.
- the parking controller selects the second group of wind turbines such that the actual value of the total active power fed by the wind turbines of the second group is less than the predetermined value for the power and the number of wind turbines in the first group is so small as possible.
- the inventive method ensures that only as many wind turbines are turned off as is necessary.
- the parking controller selects the wind turbines of the second group, that is to say the wind turbines which are operated further, in such a way that the total power value generated by these wind turbines is less than or equal to the predetermined value for the power. The power value provided by the wind turbine is thus as close as possible to the predetermined value.
- the sum of the active power of the re-coupled wind turbines increases and the sum of the active power of the still on the grid wind turbines reduced such that the sum of the active power of both groups does not exceed the predetermined value.
- the parking controller selects the wind turbines of the second group such that the actual value of the power of this wind turbine corresponds approximately to the predetermined value of the power. With this method step, the parking controller considers different combinations of wind turbines and compares the total power provided by these wind turbines with the predetermined power value.
- the plant control systems of the individual wind turbines report their respective operating mode and / or the actual value of the fed-in power to the parking control.
- the park controller receives a command to limit the injected power.
- this command may be issued by a utility company.
- the parking control is provided with a measuring device to measure the actual value of the fed from the wind farm active power.
- the parking control regulates the actual value of the active power to the specified power value.
- the design of the parking control as a control allows the specified power value to be met more accurately.
- the parking control the wind energy plants of the second group each before the same setpoint.
- the parking control limits the predetermined value for the active power in each case for a predetermined period of time. The wind farm then returns, for example, in its non-throttled operation, in which then, for example, the maximum active power is fed.
- the single FIGURE shows a schematic view of a wind farm with individual wind turbines 10, 12, 14.
- three wind turbines are shown by way of example.
- Each of the wind turbines 10, 12, 14 has a plant control, via which the electrical power generated by the wind turbine is set.
- different components such as angle of attack of the rotor blades, control of the generator and the inverter and the like, are used.
- the power generated by the individual wind turbines 10, 12, 14 is combined in the wind farm and fed into the electrical network 16.
- the wind turbines are connected via branch lines 18, 20, 22 to a main line 24, which opens into a network connection point 26.
- a main line 24 or more lines open into the network connection point 26 is irrelevant whether a main line 24 or more lines open into the network connection point 26.
- the wind farm controller 28 receives from the grid connection point 26 measured values from which the actual value of the active power fed into the network 16 is determined.
- the wind farm controller 28 controls the individual wind energy installations via data lines 36.
- the wind farm controller 28 transmits corresponding control signals via the data lines 36 to the wind energy plants 10, 12, 14.
- a group 32 of wind turbines so the wind turbines in the figure to the right of the dotted line dividing line, via a rapid stop signal off.
- rapid stop of group 32 the delivery of active power through the wind turbines is interrupted within a few seconds.
- the wind farm controller 28 provides for the other wind turbines 34, which also include the wind turbines 10 and 12, a target value for the active power to be fed.
- the selection of the groups 32, 34 of wind turbines is carried out by the wind farm controller according to the criterion that the actual value of the active power of the further operated wind turbines is only slightly less than or equal to the predetermined by the wind farm controller maximum value for the fed into the network 16 active power.
- the wind turbines 10, 12 and 14 report their operating mode to the wind farm controller 28 via data lines 30.
- the further operated wind turbines 10, 12 are closer to the grid connection 26 as the group 32 of the shut down wind turbines
- these can also be selected according to their position in the wind farm, in which case the wind turbines are switched off with the lower-yielding positions.
- Another approach is to select the wind turbines to be operated further in such a way that these are wind turbines with an approximately equal actual value of the active power.
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Abstract
Description
Die vorliegende Erfindung betrifft einen Windpark sowie ein Verfahren zum Betreiben eines Windparks. Der Windpark besitzt eine Vielzahl von Windenergieanlagen, die jeweils eine Anlagensteuerung aufweisen. Die Anlagensteuerung ist in der Lage, bei ausreichend Wind die von der Windenergieanlage zu erzeugende Wirkleistung vorzugeben. Hierzu wird der Anlagensteuerung der Windenergieanlage ein Sollwert vorgegeben. Die Anlagensteuerung kann auch als eine Regelung ausgebildet sein, so daß der Ist-Wert der von der Windenergieanlage erzeugten Wirkleistung auf den Sollwert eingeregelt werden kann. Ferner ist der Windpark mit einer Parksteuerung ausgestattet, die jeweils der Anlagensteuerung einen Sollwert für die Wirkleistung vorgibt.The present invention relates to a wind farm and a method for operating a wind farm. The wind farm has a plurality of wind turbines, each having a plant control. The system control is able to specify the effective power to be generated by the wind turbine if there is enough wind. For this purpose, the plant control of the wind turbine is given a setpoint. The system control can also be designed as a control, so that the actual value of the active power generated by the wind turbine can be adjusted to the desired value. Furthermore, the wind farm is equipped with a parking control, which sets the plant control a setpoint for the active power.
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Aus US 2002/0029097 A1 ist eine Windparksteuerung mit einer überwachenden Steuerung und Datensammlung (Scada = Supervisor command and data acqusition) bekannt. Das Scada-System ist ausgelegt um von jeder Windenergieanlage Daten zu sammeln und über eine Schnittstelle die Windenergieanlage zu steuern und mit anderen Teilen des Systems zu kommunizieren. Eine sogenannte Feldbearbeitungseinheit (APU = Area Processing Unit) ist ausgelegt, um für einen Benutzer über eine Schnittstelle die Windenergieanlage im Hinblick auf Grenzwerte und ihre Sicherheit hin zu steuern. Dies schließt ebenfalls eine Begrenzung der Leistungsabgabe ein oder Leistungsgrenzen einzustellen, durch die eine geeignete Anzahl von Windenergieanlagen herunterfährt.US 2002/0029097 A1 discloses a wind farm control with a monitoring control and data acquisition (Scada = supervisor command and data acqusition). The Scada system is designed to collect data from each wind turbine and control the wind turbine via an interface and communicate with other parts of the system. A so-called field processing unit (APU) is designed to control the wind turbine with regard to limit values and their safety for a user via an interface. This also includes a limitation of the power output set one or performance limits by which a suitable number of wind turbines will shut down.
Es ist bekannt, daß unter bestimmten Netzbedingungen und/oder bei Auftreten von bestimmten Netzfehlern es vorkommen kann, daß die von einem Windpark in das Netz eingespeiste Leistung innerhalb einer kurzen Zeitspanne zu begrenzen und auf dem begrenzten Wert stabil zu halten ist. Üblicherweise wird das Signal, das diesen Vorgang im Windpark auslöst, durch den Netzbetreiber vorgegeben. Die Zeitdauer, innerhalb der die Wirkleistung heruntergefahren werden muß, beträgt beispielsweise weniger als 4 Sekunden.It is known that under certain network conditions and / or when certain network faults occur, it may happen that the power fed into the grid by a wind farm is to be limited within a short period of time and kept stable at the limited value. Usually, the signal that triggers this process in the wind farm, set by the network operator. For example, the period of time within which the real power must be shut down is less than 4 seconds.
Der Erfindung liegt die Aufgabe zugrunde, einen Windpark sowie ein Verfahren zu dessen Betrieb bereitstellen, das es mit einfachen Mitteln erlaubt, innerhalb einer kurzen Zeitspanne die in das elektrische Netz eingespeiste Wirkleistung zu begrenzen, ohne die Möglichkeiten zur Regelung des Windparks einzuschränken.The invention has for its object to provide a wind farm and a method for its operation, which allows simple means to limit within a short period of time the fed into the electrical network active power, without limiting the possibilities for controlling the wind farm.
Erfindungsgemäß wird die Aufgabe durch einen Windpark mit den Merkmalen aus Anspruch 1 und ein Verfahren zum Betreiben eines Windpark mit den Merkmalen aus Anspruch 10 gelöst.According to the invention the object is achieved by a wind farm with the features of claim 1 and a method for operating a wind farm with the features of
Der erfindungsgemäße Windpark besitzt eine Vielzahl von Windenergieanlagen, die jeweils eine Anlagensteuerung aufweisen. Die Anlagensteuerung gibt für die zugehörige Windenergieanlage den Wert an zu generierender Wirkleistung vor. Die Parksteuerung gibt einen Sollwert für die insgesamt ins Netz einzuspeisende Wirkleistung vor. Erfindungsgemäß begrenzt die Parksteuerung die von dem Windpark in das elektrische Versorgungsnetz eingespeiste Wirkleistung auf einen vorgegebenen Wert. Sowohl die Größe des vorgegebenen Werts als auch die Zeitdauer kann entweder von der Parksteuerung selbst ermittelt oder der Parksteuerung von dem Energieversorgungsuntemehmen vorgegeben werden. Auch ist es möglich, daß die Zeitdauer für den vorgegebenen Wert nicht vorab bestimmt wird, sondern sich durch spätere Signale an die Parksteuerung ergibt. Um eine schnelle Begrenzung der eingespeisten Wirkleistung zu erzielen, teilt die Parksteuerung die Windenergieanlagen des Windparks in eine erste und in eine zweite Gruppe ein. Die Windenergieanlagen der ersten Gruppe werden abgeschaltet. Den Windenergieanlagen der zweiten Gruppe wird jeweils ein Sollwert für deren Wirkleistung vorgegeben. Mit der Parksteuerung wird ausgenutzt, daß eine Abschaltung der Windenergieanlagen, beispielsweise eine Schnellabschaltung oder ein Notstop, deutlich schneller funktioniert als das Einregeln der Windenergieanlagen auf einen niedrigeren Sollwert. Erfindungsgemäß ist vorgesehen, daß die Parksteuerung die Windenergieanlagen der ersten Gruppe wieder startet, sobald die Summe der Ist-Werte der Wirkleistung der Windenergieanlagen der zweiten Gruppe den vorgegebenen Sollwert erreicht hat. Bevorzugt leitet die Parksteuerung das Wiederhochfahren und/oder das Wiedereinkoppeln der Windenergieanlagen ein, wenn ein stationärer Wert für den Ist-Wert erreicht wurde, der ungefähr dem Sollwert entspricht. Alternativ oder zusätzlich kann das Wiederhochfahren und/oder Wiedereinkoppeln nach einer vorbestimmten Zeitdauer eingeleitet werden. Dieser Verfahrensschritt bewirkt, daß nach einem schnellen Reduzieren der Wirkleistung durch das Abschalten der Windenergieanlagen der ersten Gruppe diese wieder gestartet und ans Netz geschaltet werden. Durch das baldige Wiederhochfahren und/oder Zuschalten der Windenergieanlagen der ersten Gruppe wird sichergestellt, daß die Leistung des gesamten Windparks auch nach einer Leistungsbegrenzung schnell wieder im vollen Umfang, d.h. mit sämtlichen Windenergieanlagen geregelt werden kann.The wind farm according to the invention has a plurality of wind turbines, each having a plant control. The system controller specifies the value of active power to be generated for the associated wind turbine. The park control specifies a setpoint for the total active power to be fed into the grid. According to the invention, the parking control limits the active power fed into the electrical supply network by the wind farm to a predetermined value. Both the size of the predetermined value and the time duration can either be determined by the park control itself or the parking control can be specified by the power supply company. It is also possible that the time duration for the predetermined value is not determined in advance but results from later signals to the parking control. In order to achieve a rapid limitation of the injected active power, the park control unit divides the wind power plants of the wind farm into a first and a second group. The wind turbines of the first group are switched off. The wind turbines of the second group is in each case given a desired value for their active power. With the park control is exploited that a shutdown of the wind turbines, such as an emergency shutdown or emergency stop, works much faster than adjusting the wind turbines to a lower setpoint. According to the invention it is provided that the parking control again the wind turbines of the first group starts as soon as the sum of the actual values of the active power of the wind turbines of the second group has reached the predetermined setpoint. Preferably, the park control initiates the re-startup and / or the re-engagement of the wind turbines when a steady state value for the actual value has been reached, which corresponds approximately to the desired value. Alternatively or additionally, the re-start and / or re-coupling can be initiated after a predetermined period of time. This process step causes after a rapid reduction of the active power by switching off the wind turbines of the first group, these are restarted and connected to the grid. The early re-startup and / or connection of the wind turbines of the first group ensures that the performance of the entire wind farm can be regulated quickly, even after a power limitation again in full, ie with all wind turbines.
Weiterhin wird der Sollwert der Wirkleistung jeder einzelnen Windenergieanlage reduziert, wodurch sich der Abstand zu der durch die Windgeschwindigkeit beeinflußten, maximal möglichen Wirkleistung erhöht. Dies garantiert auch bei sinkender Windgeschwindigkeit eine längere konstante Wirkleistungsproduktion, welche einerseits den Ertrag steigert und andererseits durch die konstante Wirkleistungsproduktion zur Netzstabilität beiträgt.Furthermore, the setpoint value of the active power of each individual wind turbine is reduced, which increases the distance to the maximum possible active power influenced by the wind speed. This guarantees a longer constant active power production even with decreasing wind speed, which on the one hand increases the yield and on the other hand contributes to grid stability through constant active power production.
In einer bevorzugten Ausgestaltung ist die Parksteuerung derart ausgebildet, daß die zweite Gruppe, also die Gruppe von Windenergieanlagen, die weiterbetrieben wird, derart ausgewählt ist, daß der Ist-Wert der insgesamt von der zweiten Gruppe eingespeisten Wirkleistung kleiner oder gleich dem vorgegebenen Wert für die Wirkleistung ist. Durch die Auswahl der zweiten Gruppe wird sichergestellt, daß der vorgegebene Leistungswert, auf den reduziert werden soll, nicht oder nur geringfügig überschritten wird. Ferner stellt die Parksteuerung in der bevorzugten Ausgestaltung sicher, daß die Anzahl der Windenergieanlagen in der ersten Gruppe so klein wie möglich ist. Es wird also bei dem erfindungsgemäßen Verfahren sichergestellt, daß nur so viele Anlagen abgeschaltet werden wie notwendig. Hierdurch wird erreicht, daß der Ist-Wert der eingespeisten Leistung nach Abschaltung einzelner Windenergieanlagen nicht unnötig klein ist, sondern nach Möglichkeit lediglich geringfügig von dem vorgegebenen Wert für die eingespeiste Leistung abweicht.In a preferred embodiment, the parking control is designed such that the second group, so the group of wind turbines, which is further operated, is selected such that the actual value of the total input of the second group active power less than or equal to the predetermined value for the Active power is. The selection of the second group ensures that the predetermined power value to be reduced to is not or only slightly exceeded becomes. Further, in the preferred embodiment, the park controller ensures that the number of wind turbines in the first group is as small as possible. It is thus ensured in the inventive method that only as many systems are shut down as necessary. This ensures that the actual value of the injected power is not unnecessarily small after switching off individual wind turbines, but deviates only slightly from the predetermined value for the fed power, if possible.
In einer weiteren bevorzugten Ausgestaltung wählt die Parksteuerung die Windenergieanlagen der zweiten Gruppe derart aus, daß die Summe der Ist-Werte der Wirkleistung dieser Windenergieanlagen ungefähr dem vorgegebenen Wert der Leistung entspricht. Hierdurch wird sichergestellt, daß bei den Windenergieanlagen der zweiten Gruppe lediglich ein geringer Regeleingriff erfolgen muß. Hierdurch kann auch sichergestellt werden, daß bei ungünstigen Netzbedingungen die Windenergieanlagen weiterbetrieben werden und so mindestens für die vorgegebene Zeitdauer die Wirkleistung zur Stützung des Netzes eingespeist werden kann.In a further preferred embodiment, the parking controller selects the wind energy plants of the second group such that the sum of the actual values of the active power of these wind turbines corresponds approximately to the predetermined value of the power. This ensures that in the wind turbines of the second group only a small control intervention must be made. In this way it can also be ensured that in unfavorable network conditions, the wind turbines will continue to operate and so at least for the given period of time, the active power can be fed to support the network.
In einer bevorzugten Ausgestaltung sind die Anlagensteuerungen der einzelnen Windenergieanlagen über eine bidirektionale Datenleitung mit der Parksteuerung verbunden. Über die Datenleitung können beispielsweise Daten zu dem Zustand der Windenergieanlage an die Parksteuerung weitergeleitet werden. Diese Daten, die beispielsweise den aktuellen Ist-Wert der erzeugten Wirkleistung, aber auch andere Aspekte betreffen, können von der Parksteuerung bei der Einteilung in die erste und/oder zweite Gruppe mitberücksichtigt werden.In a preferred embodiment, the plant controls of the individual wind turbines are connected via a bidirectional data line with the park control. For example, data about the state of the wind energy plant can be forwarded to the parking control via the data line. These data, which relate, for example, to the current actual value of the active power generated, but also to other aspects, can be taken into account by the parking control during the division into the first and / or second group.
In einer bevorzugten Ausgestaltung empfängt die Parksteuerung Befehle zu dem Sollwert der einzuspeisenden Wirkleistung. Dies bedeutet, daß der Netzbetreiber die Möglichkeit besitzt, über eine zentrale Steuerung des Netzbetreibers die einzuspeisende Wirkleistung und die Zeitdauer für den Windpark vorzugeben.In a preferred embodiment, the parking controller receives commands to the setpoint of the active power to be fed. This means that the network operator has the opportunity has, via a central controller of the network operator to specify the active power to be fed in and the duration of the wind farm.
In einer zweckmäßigen Ausgestaltung ist die Parksteuerung als eine Regelung ausgebildet, die mit einer Meßeinrichtung versehen ist. Die Meßeinrichtung mißt die ins Netz eingespeiste Wirkleistung, so daß die Parksteuerung den Ist-Wert entsprechend regeln kann.In an advantageous embodiment, the parking control is designed as a control, which is provided with a measuring device. The measuring device measures the active power fed into the network, so that the parking control can regulate the actual value accordingly.
In einer bevorzugten Ausgestaltung gibt die Parksteuerung den Windenergieanlagen der zweiten Gruppe jeweils den gleichen Sollwert vor. Beispielsweise können in dieser Ausgestaltung dann die Windenergieanlagen der zweiten Gruppe so ausgewählt sein, daß sie bereits nah an dem vorgegebenen Wert für die Leistung liegen.In a preferred embodiment, the parking control the wind energy plants of the second group each before the same setpoint. For example, in this embodiment, then the wind turbines of the second group can be selected so that they are already close to the predetermined value for the power.
Die erfindungsgemäße Aufgabe wird ebenfalls durch ein Verfahren zur Steuerung eines Windparks gelöst. Der Windpark weist eine Vielzahl von Windenergieanlagen auf, deren Anlagensteuerungen jeweils einen Sollwert für die Wirkleistung der Windenergieanlagen vorgeben. Die erfindungsgemäße Parksteuerung begrenzt für eine vorgegebene Zeitdauer die von dem Windpark in das Netz eingespeiste Wirkleistung auf einen vorgegebenen Wert. Hierzu schaltet die Parksteuerung eine erste Gruppe von Windenergieanlagen ab und gibt einer zweiten Gruppe von Windenergieanlagen jeweils einen entsprechenden Sollwert für die Wirkleistung vor. Das erfindungsgemäße Verfahren erlaubt es daher sehr schnell, die vom Windpark eingespeiste Leistung zu begrenzen, da das Abschalten der Windenergieanlage, beispielsweise durch einen Schnellstop, deutlich weniger Zeit in Anspruch nimmt als ein Herunterfahren der Wirkleistung. Erfindungsgemäßen ist vorgesehen, daß die Parksteuerung die Windenergieanlagen der ersten Gruppe wieder startet, sobald die Summe der Ist-Werte der Wirkleistung der Windenergieanlagen der zweiten Gruppe den vorgegebenen Sollwert erreicht hat. Bevorzugt leitet die Parksteuerung das Wiederhochfahren und/oder das Wiedereinkoppeln der Windenergieanlagen ein, wenn ein stationärer Wert für den Ist-Wert erreicht wurde, der ungefähr dem Sollwert entspricht. Dieser Verfahrensschritt bewirkt, daß nach einem schnellen Reduzieren der Wirkleistung durch das Abschalten der Windenergieanlagen der ersten Gruppe diese wieder gestartet und ans Netz geschaltet werden.The object according to the invention is likewise achieved by a method for controlling a wind farm. The wind farm has a large number of wind turbines whose turbine controls each specify a nominal value for the active power of the wind turbines. The park control according to the invention limits the active power fed into the grid by the wind farm to a predetermined value for a predetermined period of time. For this purpose, the parking control switches off a first group of wind turbines and in each case pre-sets a corresponding setpoint value for the active power of a second group of wind turbines. The method according to the invention therefore very quickly makes it possible to limit the power fed in by the wind farm, since switching off the wind power plant, for example by a quick stop, takes significantly less time than shutting down the active power. According to the invention it is provided that the parking controller restarts the wind turbines of the first group as soon as the sum of the actual values of the active power of the wind turbines of the second group has reached the predetermined desired value. Preferably, the park control directs the re-start and / or the re-coupling of the wind turbines when a steady value for the actual value has been reached, which corresponds approximately to the desired value. This process step causes after a rapid reduction of the active power by switching off the wind turbines of the first group, these are restarted and connected to the grid.
Bei dem erfindungsgemäßen Verfahren wählt die Parksteuerung die zweite Gruppe von Windenergieanlagen derart aus, daß der Ist-Wert der insgesamt von den Windenergieanlagen der zweiten Gruppe eingespeisten Wirkleistung kleiner als der vorgegebene Wert für die Leistung ist und die Anzahl der Windenergieanlagen in der ersten Gruppe so klein wie möglich ist. Das erfindungsgemäße Verfahren stellt sicher, daß nur so viele Windenergieanlagen abgeschaltet werden wie notwendig ist. Zugleich wählt die Parksteuerung bei dem erfindungsgemäßen Verfahren die Windenergieanlagen der zweiten Gruppe, also die Windenergieanlagen, die weiterbetrieben werden, derart aus, daß der insgesamt von diesen Windenergieanlagen erzeugte Leistungswert kleiner oder gleich dem vorgegebenen Wert für die Leistung ist. Der von der Windenergieanlage bereitgestellte Leistungswert liegt somit so nah wie möglich an dem vorgegebenen Wert.In the method according to the invention, the parking controller selects the second group of wind turbines such that the actual value of the total active power fed by the wind turbines of the second group is less than the predetermined value for the power and the number of wind turbines in the first group is so small as possible. The inventive method ensures that only as many wind turbines are turned off as is necessary. At the same time, in the method according to the invention, the parking controller selects the wind turbines of the second group, that is to say the wind turbines which are operated further, in such a way that the total power value generated by these wind turbines is less than or equal to the predetermined value for the power. The power value provided by the wind turbine is thus as close as possible to the predetermined value.
Erfindungsgemäß wird nach einem Wiedereinkoppeln der Windenergieanlagen der ersten Gruppe, die Summe der Wirkleistung der wieder eingekoppelten Windenergieanlagen erhöht und die Summe der Wirkleistung der noch am Netz befindlichen Windenergieanlagen reduziert derart, daß die Summe der Wirkleistung beider Gruppen den vorgegebenen Wert nicht überschreitet. Hierdurch wird sichergestellt, daß nach einer schnellen Wirkleistungsbegrenzung die erste Gruppe wieder zugeschaltet wird, um eine möglichst große Anzahl von Stellgliedern für weitere Begrenzung zur Verfügung zu haben.According to the invention, after a re-coupling of the wind turbines of the first group, the sum of the active power of the re-coupled wind turbines increases and the sum of the active power of the still on the grid wind turbines reduced such that the sum of the active power of both groups does not exceed the predetermined value. This ensures that after a fast active power limitation, the first group is switched on again to have the largest possible number of actuators available for further limitation.
In einer ebenfalls bevorzugten Ausgestaltung wählt die Parksteuerung die Windenergieanlagen der zweiten Gruppe derart aus, daß der Ist-Wert der Leistung dieser Windenergieanlage ungefähr dem vorgegebenen Wert der Leistung entspricht. Mit diesem Verfahrensschritt betrachtet die Parksteuerung unterschiedliche Kombinationen von Windenergieanlagen und vergleicht die insgesamt von diesen Windenergieanlagen jeweils bereitgestellte Leistung mit dem vorgegebenen Leistungswert.In a likewise preferred embodiment, the parking controller selects the wind turbines of the second group such that the actual value of the power of this wind turbine corresponds approximately to the predetermined value of the power. With this method step, the parking controller considers different combinations of wind turbines and compares the total power provided by these wind turbines with the predetermined power value.
In einer bevorzugten Weiterführung des erfindungsgemäßen Verfahrens melden die Anlagensteuerungen der einzelnen Windenergieanlagen jeweils ihren Betriebsmodus und/oder den Ist-Wert der eingespeisten Leistung an die Parksteuerung.In a preferred continuation of the method according to the invention, the plant control systems of the individual wind turbines report their respective operating mode and / or the actual value of the fed-in power to the parking control.
In einer bevorzugten Ausgestaltung empfängt die Parksteuerung einen Befehl zur Begrenzung der eingespeisten Leistung. Dieser Befehl kann beispielsweise von einem Energieversorgungsuntemehmen abgesetzt werden.In a preferred embodiment, the park controller receives a command to limit the injected power. For example, this command may be issued by a utility company.
In einer bevorzugten Ausgestaltung ist die Parksteuerung mit einer Meßeinrichtung versehen, um den Ist-Wert der von dem Windpark eingespeisten Wirkleistung zu messen. Die Parksteuerung regelt den Ist-Wert der Wirkleistung auf den vorgegebenen Leistungswert. Die Ausgestaltung der Parksteuerung als Regelung erlaubt es, den vorgegebenen Leistungswert genauer einzuhalten.In a preferred embodiment, the parking control is provided with a measuring device to measure the actual value of the fed from the wind farm active power. The parking control regulates the actual value of the active power to the specified power value. The design of the parking control as a control allows the specified power value to be met more accurately.
In einer bevorzugten Ausgestaltung gibt die Parksteuerung den Windenergieanlagen der zweiten Gruppe jeweils den gleichen Sollwert vor. In einer ebenfalls bevorzugten Ausgestaltung des Verfahrens begrenzt die Parksteuerung den vorgegebenen Wert für die Wirkleistung jeweils für eine vorgegebene Zeitdauer. Der Windpark kehrt nachfolgend dann beispielsweise in seinen nicht gedrosselten Betrieb zurück, in dem dann beispielsweise die maximale Wirkleistung eingespeist wird.In a preferred embodiment, the parking control the wind energy plants of the second group each before the same setpoint. In a likewise preferred embodiment of the method, the parking control limits the predetermined value for the active power in each case for a predetermined period of time. The wind farm then returns, for example, in its non-throttled operation, in which then, for example, the maximum active power is fed.
Die Erfindung wird nachfolgend anhand einer Figur näher erläutert.The invention will be explained in more detail with reference to a figure.
Die einzige Figur zeigt eine schematische Ansicht eines Windparks mit einzelnen Windenergieanlagen 10, 12, 14. In der Figur sind beispielhaft drei Windenergieanlagen eingezeichnet. Jede der Windenergieanlagen 10, 12, 14 besitzt eine Anlagensteuerung, über die die von der Windenergieanlage erzeugte elektrische Leistung eingestellt wird. Je nach Bauart der Windenergieanlage können hierfür unterschiedliche Komponenten, wie beispielsweise Anstellwinkel der Rotorblätter, Ansteuerung des Generators und des Umrichters und dergleichen, dienen.The single FIGURE shows a schematic view of a wind farm with
Die von den einzelnen Windenergieanlagen 10, 12, 14 erzeugte Leistung wird im Windpark zusammengeführt und in das elektrische Netz 16 eingespeist. In der dargestellten Figur sind die Windenergieanlagen über Stichleitungen 18, 20, 22 mit einer Hauptleitung 24 verbunden, die in einen Netzanschlußpunkt 26 mündet. Für die Erfindung ist jedoch unerheblich, ob eine Hauptleitung 24 oder mehrere Leitungen in den Netzanschlußpunkt 26 münden.The power generated by the
Für den Windpark ist eine als Windparkregler 28 ausgebildete Parksteuerung vorgesehen. Der Windparkregler 28 erhält vom Netzanschlußpunkt 26 Meßwerte, aus denen der Ist-Wert der in das Netz 16 eingespeisten Wirkleistung ermittelt wird.For the wind farm designed as a
Ansprechend auf ein externes Steuersignal des Energieversorgungsuntemehmens (EVU) steuert der Windparkregler 28 die einzelnen Windenergieanlagen über Datenleitungen 36 an. Der Windparkregler 28 übermittelt über die Datenleitungen 36 an die Windenergieanlagen 10, 12, 14 entsprechende Steuersignale. In dem dargestellten Beispiel wird eine Gruppe 32 von Windenergieanlagen, also die Windenergieanlagen in der Figur rechts von der punktiert eingezeichneten Trennlinie, über ein Schnellstopsignal abgeschaltet. Beim Schnellstop der Gruppe 32 wird innerhalb von wenigen Sekunden die Abgabe von Wirkleistung durch die Windenergieanlagen unterbrochen.In response to an external control signal of the power supply company (RU), the
Der Windparkregler 28 gibt für die übrigen Windenergieanlagen 34, die auch die Windenergieanlagen 10 und 12 umfassen, einen Sollwert für die einzuspeisende Wirkleistung vor. Die Auswahl der Gruppen 32, 34 von Windenergieanlagen erfolgt von dem Windparkregler nach dem Kriterium, daß der Ist-Wert der Wirkleistung der weiterbetriebenen Windenergieanlagen möglichst nur geringfügig kleiner oder gleich dem von dem Windparkregler vorgegebenen Maximalwert für die in das Netz 16 einzuspeisende Wirkleistung ist. Um die Gruppen 32, 34 der Windenergieanlagen auswählen zu können, melden die Windenergieanlagen 10, 12 und 14 über Datenleitungen 30 ihren Betriebsmodus an den Windparkregler 28.The
Obwohl in dem dargestellten Ausführungsbeispiel die weiterbetriebenen Windenergieanlagen 10, 12 näher zum Netzanschluß 26 liegen als die Gruppe 32 der abgeschalteten Windenergieanlagen, bestehen die unterschiedlichsten Möglichkeiten für die Auswahl der Windenergieanlagen. Beispielsweise können diese auch nach ihrer Position im Windpark ausgewählt werden, wobei dann die Windenergieanlagen mit den ertragsschwächeren Positionen abgeschaltet werden. Ein weiterer Ansatz besteht darin, die Windenergieanlagen, die weiterbetrieben werden sollen, derart auszuwählen, daß es sich hierbei um Windenergieanlagen mit einem annähernd gleichen Ist-Wert der Wirkleistung handelt.Although in the illustrated embodiment, the further operated
Auch ist es möglich, bei der Auswahl der abzuschaltenden Windenergieanlagen schon zu berücksichtigen, daß diese nach Erreichen eines stationären Zustands wieder hochgefahren werden sollen.It is also possible to take into account when selecting the wind turbines to be switched off already, that they should be restarted after reaching a steady state.
Claims (18)
- Wind park with a plurality of wind energy plants (10, 12, 14), which each comprise one plant control, which presets a desired value for the active power to its wind energy plant, and
with a park control (28), which presets a desired value for the active power to be generated for each plant control and limits the active power fed by the wind park to a preset value, by shutting down a first group (32) of wind energy plants (14) and presetting a desired value for the active power to a second group (34) of wind energy plants (10, 12) at a time, characterized in that the park control starts the wind energy plants of the first group again as soon as the sum of the actual values of the active power of the wind energy plants of the second group has reached the preset desired value and/or a predetermined time duration has elapsed, wherein after coupling in again the wind energy plants of the first group, the sum of the active power of the wind energy plants of the first group is increased and the sum of the active power of the wind energy plants of the second group is reduced, such that the sum of the active power of both groups does not or only marginally exceed the preset value. - Wind park according to claim 1, characterized in that the park control (28) selects the second group such that the actual value of the overall active power fed by the second group is smaller or equal to the preset value for the active power and the number of the wind energy plants in the first group is selected as small as possible.
- Wind park according to claim 1 or 2, characterized in that the park control selects the wind energy plants of the second group such that the sum of the actual values of the active power of these wind energy plants roughly corresponds to the preset value of the active power.
- Wind park according to any one of claims 1 to 3, characterized in that the plant control of each wind energy plant is interconnected with the park control via a data line.
- Wind park according to any one of claims 1 to 4, characterized in that the park control receives commands regarding the desired value of the power to be fed into the grid.
- Wind park according to any one of claims 1 to 5, characterized in that the park control comprises a measuring device which measures the active power fed into the grid.
- Wind park according to claim 6, characterized in that the park control controls the value of the active power fed into the grid.
- Wind park according to any one of claims 1 to 7, characterized in that the park control presets the same desired value for the active power to each one of the wind energy plants of the second group.
- Wind park according to any one of claims 1 to 7, characterized in that the park control presets a desired value for the active power different from the remaining desired values for at least one of the wind energy plants of the second group.
- Method for the control of the wind park, which comprises a plurality of wind energy plants, the plant control of which presets a desired value for the active power of each wind energy plant at a time, wherein a park control is provided which limits the active power fed by the wind park to a preset value by shutting down a first group of wind energy plants and presetting a desired value for the active power to a second group of wind energy plants at a time, characterized in that the park control starts the wind energy plants of the first group again as soon as the sum of the actual values of the active power of the wind energy plants of the second group has reached the preset desired value, wherein after coupling in again the wind energy plants of the first group, the sum of the active power of the wind energy plants of the first group is increased and the sum of the active power of the wind energy plants of the second group is reduced, such that the sum of the active power of both groups does not or only marginally exceed the preset value.
- Method according to claim 10, characterized in that the park control selects the second group such that the actual value of the overall active power fed by the second group is smaller or equal to the preset value for the active power, and the number of the wind energy plants in the first group is selected as small as possible.
- Method according to claim 10 or 11, characterized in that the park control selects the wind energy plants of the second group such that the sum of the actual values of the active power of these wind energy plants roughly corresponds to the preset value of the active power.
- Method according to claim 10 to 12, characterized in that the plant controls of the individual wind energy plants notify their mode of operation and/or their actual value for the active power fed to the park control.
- Method according to any one of claims 10 to 13, characterized in that the park control receives commands regarding the limitation of the power which is fed.
- Method according to any one of claims 10 to 14, characterized in that the park control comprises a measuring device which measures the real value of the active power which is fed, wherein the park control controls the actual value of the active power to the preset power value.
- Method according to claim 15, characterized in that the park control presets the same desired value to each one of the wind energy plants of the second group.
- Method according to claim 15, characterized in that the park control presets a desired value different from the remaining desired values for the active power for at least one of the wind energy plants of the second group.
- Method according to any one of claims 10 to 17, characterized in that the park control limits the preset value for the active power until the park control receives a signal to cancel the limitation.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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PL07012880T PL1879277T3 (en) | 2006-07-13 | 2007-06-30 | Wind farm and method for operating a wind farm |
Applications Claiming Priority (1)
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DE102006032389A DE102006032389A1 (en) | 2006-07-13 | 2006-07-13 | Wind farm and method for operating a wind farm |
Publications (3)
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EP1879277A2 EP1879277A2 (en) | 2008-01-16 |
EP1879277A3 EP1879277A3 (en) | 2010-05-19 |
EP1879277B1 true EP1879277B1 (en) | 2011-11-09 |
Family
ID=38740163
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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EP20070012880 Active EP1879277B1 (en) | 2006-07-13 | 2007-06-30 | Wind farm and method for operating a wind farm |
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US (1) | US7649282B2 (en) |
EP (1) | EP1879277B1 (en) |
AT (1) | ATE533221T1 (en) |
DE (1) | DE102006032389A1 (en) |
PL (1) | PL1879277T3 (en) |
Families Citing this family (20)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20090055030A1 (en) * | 2007-08-21 | 2009-02-26 | Ingeteam, S.A. | Control of active power reserve in a wind-farm |
US20090160187A1 (en) * | 2007-12-19 | 2009-06-25 | Scholte-Wassink Hartmut | Control system and method for operating a wind farm in a balanced state |
DE102008028568A1 (en) * | 2008-06-16 | 2009-12-31 | Nordex Energy Gmbh | Method for controlling a wind energy plant |
EP2328259B2 (en) * | 2008-08-12 | 2024-01-03 | Ingeteam Power Technology, S.A. | System and method for power management in a photovoltaic installation |
DE102008047667A1 (en) * | 2008-09-15 | 2010-03-25 | Siemens Aktiengesellschaft | Power control for a wind farm |
US8193661B2 (en) * | 2009-02-17 | 2012-06-05 | Lineage Power Corporation | DC plant controller and method for selecting among multiple power sources and DC plant employing the same |
ES2607118T3 (en) * | 2009-02-27 | 2017-03-29 | Acciona Windpower S.A. | Wind turbine control method to dampen vibrations |
EP2578874B1 (en) * | 2010-05-28 | 2016-01-13 | Mitsubishi Heavy Industries, Ltd. | Monitoring/control device and method and wind farm provided therewith |
CN102518560B (en) * | 2011-12-30 | 2014-02-19 | 北京国电思达科技有限公司 | Method for regulating active power of wind power field |
DE102012009867A1 (en) | 2012-05-21 | 2013-11-21 | Rwe Innogy Gmbh | Control of a wind energy system |
EP2896102B2 (en) * | 2012-09-17 | 2024-10-30 | Vestas Wind Systems A/S | A method of determining individual set points in a power plant controller, and a power plant controller |
US8987929B2 (en) | 2012-11-01 | 2015-03-24 | General Electric Company | System and method for operating wind farm |
JP5717916B2 (en) | 2012-11-30 | 2015-05-13 | 三菱重工業株式会社 | Wind farm output control device and output control method |
DK2981712T3 (en) | 2013-04-04 | 2020-10-26 | Gen Electric | MULTI-PARK WIND ENERGY GENERATION SYSTEM |
WO2016078663A1 (en) | 2014-11-20 | 2016-05-26 | Vestas Wind Systems A/S | Curtailed operation of a wind power plant by deactivation of wind turbines |
JP6623085B2 (en) * | 2016-03-03 | 2019-12-18 | 株式会社日立製作所 | Distribution system voltage regulator, voltage regulation method, and voltage regulation system |
WO2018006921A1 (en) | 2016-07-06 | 2018-01-11 | Vestas Wind Systems A/S | A wind power plant having a plurality of wind turbine generators and a power plant controller |
CN109416019B (en) | 2016-07-06 | 2020-05-05 | 维斯塔斯风力系统集团公司 | Wind power plant with multiple wind turbine generators and a power plant controller |
CN110159484B (en) * | 2019-04-04 | 2020-10-13 | 浙江运达风电股份有限公司 | Wind turbine group starting and stopping control method based on wind power plant level energy control |
US12044213B2 (en) * | 2022-02-28 | 2024-07-23 | General Electric Renovables Espana, S.L. | System and method for controlling wind farm operation during a weak grid condition |
Family Cites Families (8)
Publication number | Priority date | Publication date | Assignee | Title |
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IES78624B2 (en) | 1997-10-07 | 1998-02-25 | Gineadoiri Gaoithe Teicneolaio | A wind energy system |
DE19948196A1 (en) | 1999-10-06 | 2001-05-17 | Aloys Wobben | Process for operating a wind farm |
US20020029097A1 (en) * | 2000-04-07 | 2002-03-07 | Pionzio Dino J. | Wind farm control system |
WO2003030329A1 (en) | 2001-09-28 | 2003-04-10 | Aloys Wobben | Method for operating a wind park |
DK1467463T3 (en) | 2003-04-09 | 2017-03-27 | Gen Electric | Wind farm and method for operating it |
DK1571746T3 (en) * | 2004-03-05 | 2019-01-07 | Gamesa Innovation & Tech Sl | Active power control system of a wind farm |
DE102004060943A1 (en) * | 2004-12-17 | 2006-07-06 | Repower Systems Ag | Wind farm power control and method |
US7298059B2 (en) * | 2004-12-17 | 2007-11-20 | General Electric Company | System and method for operating a wind farm under high wind speed conditions |
-
2006
- 2006-07-13 DE DE102006032389A patent/DE102006032389A1/en not_active Ceased
-
2007
- 2007-06-30 PL PL07012880T patent/PL1879277T3/en unknown
- 2007-06-30 AT AT07012880T patent/ATE533221T1/en active
- 2007-06-30 EP EP20070012880 patent/EP1879277B1/en active Active
- 2007-07-11 US US11/775,968 patent/US7649282B2/en active Active
Also Published As
Publication number | Publication date |
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US20080048501A1 (en) | 2008-02-28 |
DE102006032389A1 (en) | 2008-01-24 |
PL1879277T3 (en) | 2012-04-30 |
ATE533221T1 (en) | 2011-11-15 |
EP1879277A3 (en) | 2010-05-19 |
US7649282B2 (en) | 2010-01-19 |
EP1879277A2 (en) | 2008-01-16 |
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